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Academic literature on the topic 'Quaternaire (ère géologique) – Espagne'
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Dissertations / Theses on the topic "Quaternaire (ère géologique) – Espagne"
Pierson, d'Autrey Laurent. "Sédimentation et structuration synsédimentaire dans le bassin néogène d'Alcoy (Cordillères bétiques externes orientales, Espagne)." Paris 11, 1987. http://www.theses.fr/1987PA112061.
Full textThis thesis offers an analysis of sedimentary neogene and quaternary sequences and tectonic and tectono-sedimentary process, which allow to outline the dynamic evolution of the alcoy basin. The area, which has been studied, belongs to the internal Prebetic part of the external betic Cordillera. Since the Aquitanian, the area has been submited to a marine sedimentary regime. But, it is from the lower Burdigalien that a period of a N 130-N 140 shortening is the reason of the individualism of the basin. Bigs cavings, checked by NW-SE faults, slice old folds betic direction of which is WSWENE. At the end of the transgressive upper Burdigalian sedimentation, the basin is subjected again to a shortening, direction of which is sub-meridian, which brings up a re-mobilization of the old folds, with a deepening of sedimentary environment. After, during the Langhian, a N 130-N 140 shortening is the cause of a tectonic instability, which appears by many gravitary phenomena and a synclinal strain of the Baradello trench, checked up by a reverse move with a small left strikeslip of the N 50 Alcoy fault. The stop of stains, which is shown by a discordance of the Serravallian deposits over the Langhian deposits, is the reason, during this period, of a transgression over all the emergent areas during the Langhian. The presence of a new discordance between the Serravallian and the lower Tortonian is the proof of a revival of the tectonic activity (shortening) and consequently of a warping margin, and of a decrease of the depht of the sedimentary environment. The final emersion of the marine basin takes place during the Tortonian with the erection of overthrusting and important structures and the resetting of old ground features, which give an indication of a sub-meridian shortening. After these tectonic events, a lake is appearing, gradualy filled up during the Messinian, because the subsidence is slowing down and because the flood plains progressing since the border rims are spreading out. The filling of the exundated basin does end during the Plio-Quaternary and the present digging by the drainage pattern makes clear a regional lift up
Bailon, Salvador. "Amphibiens et reptiles du pliocène et du Quaternaire de France et d'Espagne : mise en place et évolution des faunes." Phd thesis, Université Paris-Diderot - Paris VII, 1991. http://tel.archives-ouvertes.fr/tel-00507285.
Full textPons, Jean-Claude. "Génèse et répartition des produits détritiques dans un contexte volcano-sédimentaire tropical : exemple de la Martinique et de ses bassins adjacents." Bordeaux 1, 1987. http://www.theses.fr/1987BOR10512.
Full textArbouille, Didier. "La sédimentation de la plate-forme continentale Nord-Aquitaine au Quaternaire terminal : un exemple de système transgressif." Bordeaux 1, 1987. http://www.theses.fr/1987BOR10564.
Full textLo, Papa Goumbo. "Le volcanisme quaternaire de Dakar (Sénégal occidental) : Particularités pétrographiques, caractères géochimiques, implications pétrogénétiques." Nancy 1, 1988. http://www.theses.fr/1988NAN10173.
Full textCaillat, Bernard. "Pathologie de quelques mammifères quaternaires de France métropolitaine : aspects et implications." Bordeaux 1, 1989. http://www.theses.fr/1989BOR10610.
Full textChakroun, Amel. "Étude sédimentologique et paléontologique des affleurements du Quaternaire le long de la côte nord orientale de la Tunisie." Perpignan, 2006. http://www.theses.fr/2006PERP0761.
Full textQuaternary coastal deposits are well developed in North-eastern Tunisia. The finest exposures of these deposits are observed in the South-East of Cap Bon peninsula where two lithostratigraphic units were distinguished. A quartzous unit formed by a marine member, a paleosol and a dunal member. The biofacies of the quartzous unit base is basaicly characterized by the occurence of mollusks devoid of Strombus bubonius. The sea level lowstand records are limited to a paleosoils and an eolian sandstone depending mainly on climatic conditions. This unit is considered as the lateral equivalent of Khniss formation (Mahmoudi, 1986,1988) in central Tunisia and of the quartzous unit in southern Tunisia (Jedoui, 2000; 2002). The upper unit is more extensive and consists of shallow marine (shoreface, foreshore, backshore) and continental (colluvium, paleosol) deposits. It is formed at the base by a marine member rich in warm senegalese fauna particularly Strombus bubonius LAMARCK and a large content of oolites and peloids. This member is considered as the most laterally continuous and widespread quaternary marine episode along the actual coastline. It is localy overlain by discontinous reddish alluvial deposits (second member) interbedded between the marine member (second member) and the eolian member (third member). The fourth member corresponds to a calcret overlain by a paleosoil (fifth member) which bears abundant helix. The eolian member of the carbonate unit yields six species of big mammalia : Equus mauritanicus POMEL, Alcelaphus buselaphus PALLAS, Gazella atlantica BOURGUINAT, Phacochoerus aethiopicus, PALLAS, Cerathoterium simum BURCHELL and Hystrix cristata LINNE. This association of big mammalia fauna gathered in El Geffel cave (Qorba) indicates Late Pleistocene age and characterizes a dry climate period. During this period, grazer big mammalia had been developed in savannah type of vegetal cover and adapted to large open biotopes or particularly dry ones. The important voluminous production and accumulation of oolithes and pellets within carbonate sediments suggests that the coastal water of Cap Bon peninsula during this period was warmer than the present. This unit is the equivalent of the Rejiche formation (Paskoff et Sanlaville, 1976), Rejiche unit (Mahmoudi, 1986, 1988) and carbonate unit (Jedoui, 2000; 2002). Therefore, during the Isotopic Substage 5e, two main lithostratigraphic units can be distinguished in Cap Bon Penunsula. The observed petrographic differences between the carbonate unit and the quartzous unit can thus be explained by climate modification during Isotopic Substage 5e
Moïne-Vaziri, Hossein. "Volcanisme tertiaire et quaternaire en Iran." Paris 11, 1985. http://www.theses.fr/1985PA112187.
Full textLachenal, Anne-Marie. "Ecologie des ostracodes du domaine méditerranéen : application au golfe de Gabès (Tunisie orientale) : les variations du niveau marin depuis 30 000 ans." Lyon 1, 1988. http://www.theses.fr/1988LYO10037.
Full textEynaud, Fréderique. "Kystes de dinoflagelles et évolution paléoclimatique et paléohydrologique de l'Atlantique Nord au cours du dernier cycle climatique du Quaternaire." Bordeaux 1, 1999. http://www.theses.fr/1999BOR10636.
Full textBooks on the topic "Quaternaire (ère géologique) – Espagne"
Grant, D. R. Quaternary geology, Cape Breton Island, Nova Scotia. Ottawa: Geological Survey of Canada, 1994.
Find full textJackson, Jeremy B. C., 1942-, Budd Ann F, and Coates Anthony G, eds. Evolution & environment in tropical America. Chicago: University of Chicago Press, 1996.
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